







































Volume 03 Issue 12-2023 64 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

 

 

 

 

 

 

 

 

 

 

 

ABSTRACT 

The article presents scientific information about fungi of the genus Puccinia, found in plants of the Lamiaceae family, 

widespread in the north-east of Uzbekistan. According to the results of scientific research, 3 species of Puccinia were 

found in 10 species of plants of the Lamiaceae family: Puccinia menthae Pers., Puccinia phlomidis Thum., Puccinia 

ziziphorae P. Syd. and Syd. In addition, brief descriptions and summaries of the morphology and disease symptoms of 

some fungi are given. 

KEYWORDS 

Lamiaceae, Puccinia, Puccinia menthae, host plant, fungi. 

INTRODUCTION

Zaprometov and Gaponenko were the first to conduct 

research on the microbiota of higher plants found in 

Central Asia. Their data includes information on 396 

species of fungi found on 263 plant species [21, 42, 43]. 

In 1944-1960, Golovin and other scientists conducted 

research on micromycetes in higher plants [5, 6, 22, 23, 

  Research Article 

 

RUST FUNGI OF PLANT SPECIES BELONGING TO THE LAMIACEAE 

FAMILY, COMMON IN THE NORTH-EASTERN REGIONS OF UZBEKISTAN  
 

Submission Date: December 15, 2023, Accepted Date:  December 20, 2023,  

Published Date: December 25, 2023  

Crossref doi: https://doi.org/10.37547/ajbspi/Volume03Issue12-11 

 

 

I.Yu.Urinboyev  
National University of Uzbekistan, 100174, Tashkent, University street, Uzbekistan                                                                                                        

 

A.U.Rakhmatova  
Institute of Chemistry of Plant Substances, 100170, Tashkent, Uzbekistan    

 

M.J.Rakhmatova  
Fergana State University, 712000, Fergana, Murabbiylar street, Uzbekistan       

 

  

Journal Website: 

https://theusajournals.

com/index.php/ajbspi 

Copyright: Original 

content from this work 

may be used under the 

terms of the creative 

commons attributes 

4.0 licence. 

 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=
https://theusajournals.com/
https://doi.org/10.37547/ajbspi/Volume03Issue12-11
https://theusajournals.com/index.php/ajbspi
https://theusajournals.com/index.php/ajbspi


Volume 03 Issue 12-2023 65 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

24, 25, 26, 33]. In the period 1970-1990, information 

about fungi found in plants common on the territory of 

the Republic can be seen in the scientific works of 

scientists from the Botanical Institute at the Academy 

of Sciences of the Republic of Uzbekistan [27, 36, 38, 

39, 40]. So far, in the course of scientific work and 

research carried out by Uzbek scientists, new species 

of fungi and new species of host plants have been 

identified on the territory of the Republic. The 

morphological characteristics of the identified fungi 

and their summaries are also formed [1, 2, 3, 4, 7, 9, 10, 

11,12, 13, 14, 15, 16, 17, 18, 19, 28, 31, 32]. 

Scientists provided information on more than 3,500 

species belonging to 200 genera of plants in the family 

Lamiaceae. In Central Asia there are more than 460 

plant species of the Lamiaceae family, belonging to 53 

families, and in Uzbekistan - 214 species, belonging to 

38 families. The stem of plants of the Lamiaceae family 

is tetrahedral, the leaves on the stem are opposite, and 

a simple leaf. The petals of representatives of this 

family are bilabial, the lower lip consists of 3 petals, the 

upper lip - of 2 petals. Sometimes there are 2 skiers, and 

more often than not there are 4 skiers. There are 2 

carpels. The fruit looks like a nut. The genera Ziziphora, 

Mentha, Origanum are widely used in the perfumery, 

confectionery, food industries, as well as in medicine 

[34,35]. 

 

METHODS 

In 2023, field research was organized in the form of 

planned route monitoring of natural landscapes, crop 

fields and gardens in various regions of the Republic. 

Mycological methodological programs, various 

identifiers and scientific articles were used to 

determine the morphological characteristics of fungal 

species. The time and place of collection of plant 

samples taken for the study were also determined. The 

study of herbarium samples of fungi was carried out 

using trinocular microscopes N – MBI – 15 Biolam and 

300M (HDCE-X5). A Canon IXUS 1260 digital camera 

was used to photograph mushrooms in natural 

conditions. The current systematic nomenclature of 

identified fungi is given based on the site 

indexfungorum.org [29] and the names of host plants 

powo.science.kew.org [30] (Fig. 1). 

 

RESULTS AND DISCUSSION  

As a result of the study of scientific sources, re-

examination of samples of rust fungi stored in the 

Tashkent Mycological Herbarium, morphological study 

of newly collected materials and their taxonomic 

analysis, it was established that Puccinia menthae Pers 

is found in the majority of Puccinia fungi of 6 species 

Mentha aquatica L., Mentha arvensis L., Mentha 

longifolia L., Nepeta mariae Rege, Nepeta olgae Regel, 

Origanum tyttanthum Gontsch., Puccinia phlomidis 

Thüm. and 3 species Phlomoides hissarica (Regel) 

Adylov, Kamelin & Makhm., Phlomoides speciosa 

(Rupr.) Adylov, Kamelin & Makhm., Stachyopsis 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 66 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

oblongata (Schrenk) Popov & Vved., [Eriophyton 

oblongatum (Schrenk) Bendiksby], Puccinia ziziphorae 

P Syd. & Syd.: Ziziphora pedicellata Pazij & Vved. 

Studies have shown that the species Puccinia menthae 

Pers., belonging to the Puccinia family, infect the 

largest number of plants of the Lamiaceae family 

(Diagram 1). 

Table 1 

 Taxonomic analysis of Puccinia species found on plants of the Lamiaceae family in the north-eastern region 

of Uzbekistan 

 

As can be seen from the table, 3 species of fungi 

belonging to the genus Puccinia were found in 10 plant 

species of the Lamiaceae family in the study area, and 

it was also found that the fungus P. menthae infects 6 

plant species. 

                                                                                       

 

 

 

 

 

 

№ Species Substrate/host plants Quantity Plant family 

1  Mentha longifolia L.   

2  Mentha aquatica L.   

3  Nepeta mariae Rege   

4 P. menthae Nepeta olgae Regel 6  

5  Origanum tyttanthum Gontsch., [Origanum 

vulgare subsp. gracile (K.Koch) letsw.] 

  

6  Mentha arvensis L.  Lamiaceae 

 

7 

 Phlomoides hissarica (Regel) Adylov, Kamelin & 

Makhm. 

  

8 P. phlomidis Phlomoides speciosa (Rupr.) Adylov, Kamelin & 

Makhm. 

3  

 

9  

Stachyopsis oblongata (Schrenk) Popov & Vved., 

[Eriophyton oblongatum (Schrenk) Bendiksby] 

  

10 P. ziziphorae Ziziphora pedicellata Pazij & Vved. 1  

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 67 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

Diagram1 

 

 
The conducted studies show that the species 

Puccinia menthae Pers., belonging to the family 

Puccinia, affects the 6 most common plant species 

of the family Lamiaceae. 

Brief morphological description of Puccinia species 

distributed among plants of the family Lamiaceae 

 Puccinia menthae Pers. – is the host plant of 

Mentha longifolia L. Spermogonia are scattered or in 

small groups on the underside of plant leaves, between 

the aecidia, with a diameter of 130-170 μm, light yellow 

or brown. Aecidiospores are oval, elliptical, oblong, 

with a diameter of 19-29×15-21 microns, the shell is pale 

yellow or colorless, thickness is 1-2 microns. 

The mushrooms, located in the lower part of the 

leaves, are densely located on the surface of the 

leaves, fused, round, with a diameter of 0.2-0.6 mm, 

brown or dark brown. Uredenospores are round, 

elliptical, ovoid, 20-28×16-21 microns in diameter, the 

shell is pale yellow, 1.5-2 microns thick, spiny, with 2-3 

poorly visible pores. Teliospores are broadly elliptical, 

with a diameter of 22-35×21-28 microns, the tip is 

rounded, the lower part is compressed or not 

narrowed, the shell is brown, 1.5-2.5 microns thick, not 

thickened at the tip, spiny, stalk. weak, equal to the 

length of the spore [44]. 

 Puccinia menthae Pers. – is the host plant of 

Mentha longifolia L. Spermogonia are scattered or in 

small groups on the underside of plant leaves, between 

the aecidia, 130-170 µm in diameter, light yellow or 

brown. Aecidiospores are oval, elliptical, oblong, 19-

29×15-21 µm in diameter, the shell is pale yellow or 

colorless, 1-2 µm thick. The mushrooms, located in the 

lower part of the leaves, are densely located on the 

surface of the leaves, fused, round, 0.2-0.6 mm in 

diameter, brown or dark brown. Uredenospores are 

round, elliptical, ovoid, 20-28×16-21 µm in diameter, the 

shell is pale yellow, 1.5-2 µm thick, spiny, with 2-3 poorly 

visible pores. Teliospores are broadly elliptical, with a 

diameter of 22-35×21-28 microns, the tip is rounded, the 

P. menthae 60 % P. phlomidis 30 % P. ziziphorae 10 %

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 68 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

lower part is compressed or not narrowed, the shell is 

brown, 1.5-2.5 microns thick, not thickened at the tip, 

spiny, the stalk is weak, equal to the length of the spore 

[44]. 

 Puccinia phlomidis Thüm. – is the host plant of 

Phlomoides tuberosa L. The spermogonia of the 

fungus are located on the underside of the leaves. 

Numerous, scattered or forming a small group, round 

in shape, 150-170 mm in diameter, pale yellow in color. 

Aecidiospores are spherical, oval, multifaceted, ovoid, 

diameter 21-25×16-19 microns, skin colorless or pale 

yellow, up to 1 micron thick, almost smooth or partially 

spiny, orange in color. There are no uredospores. 

Teleutococci on the upper side of the leaf, scattered or 

located around a ring, the body is larger, round or 

irregular in shape, up to 1 mm in diameter, brown in 

color. Teliospores are elliptical or broadly oval, 24-

34×19-22 µm in diameter, the tip and base are round, 

the shell is brown, smooth, the stalk is colorless, very 

short, sometimes absent [44]. 

 Puccinia ziziphorae P. Syd. & Syd. – is the host 

plant of Ziziphora pedicellata Pazij & Vved. The fungus 

is most often found on both sides of the plant's leaves. 

It also damages the branches and stems of the plant. It 

has the shape of round spots and is pale yellow in color. 

The etiospores of the fungus are pear-shaped, 

elliptical, round in shape, with a diameter of 19.8-

21.1×18.2-22.5 microns, a shell of 1 micron, colorless. 

Uredospores are located mainly in the lower part of the 

plant leaf, sometimes in the upper part, have an ovoid, 

round, elliptical shape, diameter 21.6-26.0 × 16.5-23.2 

microns. Teliospore diameter 26.4-33.0×19.8-23.1 µm, 

elliptical, slightly elongated, colorless stalk, thickness 

39-45 µm. [37]. 

 

Summary of Puccinia species belonging to plants of the family Lamiaceae, distributed in the northeastern 

region of Uzbekistan 

Basidiomycota Phylum 

Pucciniomycetes Class 

Pucciniales Order 

Pucciniaceae Family 

Puccinia  Genus 

Puccinia menthae Pers. 

 

Mentha aquatica L. – Tashkent region, Parkent district, 

Bashkizilsoy, 07/19/1951, Bostanlyk district, Kainarsoy, 

1949-1950. [37]. 

Mentha arvensis L. – Tashkent region, Parkent district, 

Bashkizilsay, 1949-1950 [37]. 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 69 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

Mentha longifolia L. – Namangan region, Popsky 

district, near Kandagan, 07/18/2000, Dubog village, 

07/17/2000, Chartak district, Iskavat village, 07/23/2000, 

Uychinsky district, Kyzylrovot 07/24/2000, 06/29/2001, 

Chust, from the camp “Dustlik”, 07/10/2001, 

07/23/2002, Namangan district, Shor village 

08/05/2000, Chartak district, Peshkurgan village, 

05/26/2002 (Gaffarov-2005). Tashkent region, Parkent 

district, Bashkizilsay, Soyok, Gisarak, 1949-1950, 

Akhangaran district, 10/06/1953-1955, Angren district, 

09/26/1953 [37]. Angren city, Ertoshsay village, 

N=41º11'0.03", E=70º18'11.93", ͪ – 1598 m, 06/26/2023. 

Nepeta mariae Rege – Tashken region, Angren district, 

10/06/1953-1955, Bustanlyk district, large Maydantal 

07/06/1955 [37]. 

Nepeta olgae Regel – Tashken region, Parkent district, 

Bashkizilsay, 07/23/1953 [37]. 

Origanum tyttanthum Gontsch., – Fergana region, 

Fergana district, Shakhimardon, 07/10/1950. Tashken 

region, Parkenst district, Bashkizilsay, 04-06.1950, 

Sukak, 1953, Reserve, 08.13.1953, Angren district, 06-

10.1953-1955 [37]. Angren city, Ertashsay village, Ertash 

street, N=41º11'06.03", E=70º18'11.93", ͪ – 1598 m.  

Puccinia phlomidis Thüm. 

 Stachyopsis oblongata (Schrenk) Popov & 

Vved. – Fergana region, Fergana district, 07/06/1950. 

Tashkent region, Bustanlyk district, Alaudinsay, 

Maidantal, 07/22/1955 [37]. 

Phlomoides speciosa (Rupr.) Adylov, Kamelin & 

Makhm. – Tashkent region, Parkent district, 

Bashkizilsay reserve, 04-05.1950, Akhangaran district, 

Ohangaron tumani, lower Kainar hills, Yangi village, 

upper hills, 06/04/1953, Bustanlyk district, Maydantal, 

07/22/1957 [37]. 

Phlomoides hissarica (Regel) Adylov, Kamelin & 

Makhm. – Tashkent region, Bustanlyk district, 

Khoramzadasay, 07/20/1961 [37]. 

Puccinia ziziphorae P. Syd. & Syd. 

 Ziziphora pedicellata Pazij & Vved. – Namangan 

region, Pap district, from the mountains of the eastern 

part of the village of Kandagan, 07/18/2000, 07/17/2002 

[9]. Tashkent region, Parkent district, Shavvazsay, 

Bashkizilsay, 07.1949. Akhangaran district, Abiyasov, 

06/26/1954, 10/02/1954. Orta-Chirchik district, Parlisoy 

village, upper hills, 06/08/1953. Bustanlyk district, large 

and small Maydontol, 08/06/1955 [37]. Bustanlyk 

district, Amirsay, N=41º29'10.42", E=69º56'43.1", 

altitude above sea level: 1611 m., 07/04/2023 [32]. 

 

CONCLUSION 

Mycological studies of rust fungi found in plants of the 

Lamiaceae family, distributed in the North-Eastern 

region of Uzbekistan, showed that fungi of the 

Puccinia family were found in 3 species, such as 

Puccinia menthae Pers., Puccinia phlomidis Thüm., 

Puccinia ziziphorae P. Syd. & Syd.; Mentha aquatica L., 

Mentha arvensis L., Mentha longifolia L., Nepeta 

mariae Rege, Nepeta olgae Regel, Origanum 

tyttanthum Gontsch., Phlomoides hissarica (Regel) 

Adylov, Kamelin & Makhm., Phlomoides speciosa 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 70 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

(Rupr.) Adylov, Kamelin & Makhm., Stachyopsis 

oblongata (Schrenk) Popov & Vved., [Eriophyton 

oblongatum (Schrenk) Bendiksby], Ziziphora 

pedicellata Pazij & Vved. found in 10 plant species of 

the Lamiaceae family. Observations have shown that 

these fungi are found in hilly, mountainous and foothill 

regions of the temperate zone. It has been observed 

that rust fungi develop from the second half of spring 

until the last months of summer and cause plant 

disease. 

 

REFERENCES 

1. Abdurazakov A.A., G‘afforov Yu.Sh. Farg‘ona 

vodiysida tarqalgan do‘lana (Crataegus L.) 

o‘simligining mikromisetlari va kasalliklari. 

//Namangan davlat universiteti ilmiy xabarnomasi, 

2019. №11. -B. 50-56. 

2. Abdurazakov A.A., G‘afforov Yu.Sh. Farg‘ona 

vodiysidagi toldoshlar (Salicaceae) oilasining 

mikobiotasi va zamburug‘ kasalliklari. //Qarshi 

davlat universitetining ilmiy axborotnomasi, 2020. 

№3(45). B – 47-57. 

3. Abdurazakov A.A., Ikromov S.A., Xalilova K.A., 

Madaminov R.R., Hamroxujaev A.R., Azizov V.G., 

G‘afforov Yu.Sh. O‘zbekistonda tarqalgan zarang 

(Acer L.) daraxtining mikobiotasi va zamburug‘ 

kasalliklari. O‘zbekiston Milliy universiteti 

axborotnomasi, 2018. №3(2): -B. 87-93. 

4. Abdurazakov A.A., Pem D., G‘afforov Yu.Sh. 

Farg‘ona vodiysi daraxt va butalarining askomiset 

mikromisetlari. //Andijon Davlat universitetining 

ilmiy xabarnomasi, 2019. №4. -B-13–21. 

5. Axmedova F.G. Mikoflora yugo-zapadnix otrogov 

Tyan'-Shanya. Avtoref. diss. … kand. biol. nauk. 

Tashkent, 1966. 26 s. 

6. Baymuratova G.T. Mikoflora Golodnoy stepi. 

Avtoref. diss. … kand. biol. nauk. Tashkent, 1963. 15 

s. 

7. G‘afforov Yu.Sh. Namangan viloyatining yuksak 

o‘simliklari mikromisetlari. // Dissertasiya ishi, 

Toshkent. 2005, B. 300. 

8. Gafforov Y, Abdurazzokov A, Yarasheva M & Ono 

Y. Rust Fungi from the Fergana Valley, Chatkal and 

Kurama Mountain Ranges in Uzbekistan. Stapfia 

reports. 2016. 172-bet. 

9. Gafforov Y, Abdurazzokov A, Yarasheva M & Ono 

Y. Rust Fungi from the Fergana Valley, Chatkal and 

Kurama Mountain Ranges in Uzbekistan. Stapfia 

reports. 2016. 105: – Р. 161-175. 

10. Gafforov Y. & Rakhimov D. Diplodia and Dothiorella 

species (Botryosphaeriaceae, Ascomycota) from 

Uzbekistan. Journal of the Botanical Research 

Institute of Texas. 2017. 11(2). – P. 455 – 467. 

11. Gafforov Y., Ordynets A., Langer E., Yarasheva M., 

Gugliotta A., Schigel D., Pecoraro L., Zhou Y., Cai L., 

Zhou L.W., Species diversity with comprehensive 

annotations of wood – inhabiting poroid and 

corticioid fungi in Uzbekistan. Front. Microbiol. doi: 

10.3389/fmicb. 2020. 598321. – P. 1-35. 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 71 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

12. Gafforov Yu.Sh. Mikromiseti sosudistix rasteniy 

Namanganskoy oblasti. Avtoref. diss. … kand. biol. 

nauk. Tashkent, 2005. 21 s. 

13. Gafforov, Y. (2017). A preliminary checklist of 

Ascomycetous microfungi from Southern 

Uzbekistan. Mycosphere 8, 660–696. doi: 

10.5943/mycosphere/8/4/12 

14. Gafforov, Y. S. (2014). Taxonomy and diversity of 

the genus Ganoderma Karst. (Basidiomycota) 

species in Uzbekistan. Uzbekistan Biol. J. Spec. 

Issue 22–25. 

15. Gafforov, Y. S. (2016). Ascomycetous microfungi of 

Dendroflora of Boysun-botanical-geographic 

region. Uzbekistan J. Ecol. 12, 36–39. 

16. Gafforov, Y., and Ordynets, A. (2020). 

Aphyllophoroid fungi of Uzbekistan. Institute of 

Botany of the Academy of Sciences of the Republic 

of Uzbekistan. Occurrence Dataset. Available 

online at: GBIF.org. doi: 10.15468/vsru5z 

17. Gafforov, Y., Phookamsak, R., Jiang, H. B., 

Wanasinghed, D. N., and Juliev, M. (2019). 

Ophiobolus hydei sp. nov. (Phaeosphaeriaceae, 

Ascomycota) from Cirsium and Phlomoides in 

Uzbekistan. Botany 97, 671–680. doi: 10.1139/cjb-

2019-0118 

18. Gafforov, Y., Riebesehl, J., Ordynets, A., Langer, E., 

Yarasheva, M., Ghobad-Nejhad, M., et al. (2017). 

Hyphodontia (Hymenochaetales, Basidiomycota) 

and similar taxa from Central Asia. Botany 95, 1041–

1056. doi: 10.1139/cjb-2017-0115 

19. Gafforov, Y.S. Coniothyrium-like fungi 

(Ascomycota) from Western Tien Shan and South – 

Western Hissar mountains of Uzbekistan. 

Ўзбекистон биология журнали, 2016. 4: – P. 32-36. 

20. Gaponenko N. I. 1965. Obzor gribov Buxarskoy 

oblasti. Tashkent: 114 s. 

21. Golovin P. N. 1944. Zakonomernosti raspredeleniya 

mikologicheskoy flori na Pamire. Izvestiya 

Tadjikskogo filiala Akademii nauk SSSR 8: 89–107. 

22. Golovin P. N. 1949. Mikoflora Sredney Azii. T. 1. 

Muchnistorosyanie gribi Sredney Azii. Vip. 1. 

Tashkent: 145 s. 

23. Golovin P. N. 1956. Materiali k monografii 

muchnistorosyanix gribov (sem. Erysiphaceae) v 

SSSR. Trudi Botanicheskogo instituta im. V. L. 

Komarova AN SSSR. Se-riya 2. Sporovie rasteniya. 

Vip. 10. M.-L.: 309–366. 

24. Golovin P. N. 1956. Monograficheskiy obzor roda 

Leveillula Arn. (Muchnistorosyanie gribi sem. 

Erysiphaceae). Trudi Botanicheskogo instituta im. 

V. L. Komarova AN SSSR. Seriya 2. Sporovie 

rasteniya. Vip. 10. M.-L.: 195–308. 

25. Golovin P. N. 1960. Muchnistorosyanie gribi, 

parazitiruyushie na kul'turnix i poleznix rasteniyax. 

M.-L.: 266 c  

26. Golovin P.K. 1941. Грибы пустынных районов 

Средней Азии. Труди Узбекского филиала 

Aкадемии наук СССР.  Botanika. Seriya.11. Issue 1. 

Tashkent. Pp. 1-47. 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=


Volume 03 Issue 12-2023 72 

                 

 
 

   
  
 

American Journal Of Biomedical Science & Pharmaceutical Innovation    
(ISSN – 2771-2753) 
VOLUME 03 ISSUE 12 PAGES: 64-72 

SJIF IMPACT FACTOR (2021: 5. 705) (2022: 5. 705) (2023: 6.534) 
OCLC – 1121105677     

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Publisher: Oscar Publishing Services 

Servi 

27. Gulyamova M.G., Kuchmi N.P., Ramazanova S.S., 

Sagdullaeva M.Sh., Qirg‘izbaeva X.M. Flora gribov 

Uzbekistana. Sumchatie gribi. – Tashkent: Fan, 

1990. T.7.  – 196 s. 

28. Iminova M.M. Farg‘ona vodiysining 

makromisetlari. Biol. fan. nom. diss. avtoreferati. – 

Toshkent, 2009. – 20 b.  

29. Index Fungorum. www.indexfungorum.org 

(Murojaat etilgan sana: 05-27.10.2023). 

30. Kew Science Plants of the World online. 

www.powo.science.kew.org (Murojaat etilgan 

sana: 05-27.10.2023). 

31. Nuraliev X.X. Mikromiseti sosudistix rasteniy 

Kashkadar'inskoy oblasti. Avtoref. diss. … kand. 

biol. nauk. Tashkent, 1998. 18 b. 

32. Oʼrinboev I.Yu. Shimoliy-sharqiy “O’zbekistonda 

tarqalgan Ziziphora o’simlik turkum turlarining 

zang zamburug’lari”, “Biologik  tadqiqotlarda  

zamonaviy  yondoshuvlarning  dolzarb  masalalari” 

2023. 

33. Panfilova T.S., Gaponenko N.I. “Микофлора 

бассейна реки Aнгрен”. Ташкент: Издателцво АН 

УзССР.  (1963). 

34. Pratov O’, Shamsuvaliyeva L. va boshqalar. 

“Botanika” T.: “Ta’lim nashriyoti”, 2010. (darslik), 

232-233 betlar. 

35. Pratov. U., Jumaev. K. Yuksak oʼsimliklar 

sistematikasi (oʼquv qo’llanma). T., “UАJBNT” 

Markazi, 2003, 126 b. 

36. Qirg‘izbaeva X.M., Sagdullaeva M.Sh., Ramazanova 

S.S., Gulyamova M., Kuchmi N.P., Azimxo‘jaeva 

M.N., Salieva Ya.S. Flora gribov Uzbekistana. 

Piknidial'nie gribi. – Tashkent: Fan, 1990. T.8.  – 236 

b. 

37. Ramazanova, S.S. Fayzieva F.X., Sagdullaeva M.SH., 

Kirgizbaeva X.M., Gaponenko N.I. Флора грибов 

Узбекистана Tom 3. Tashkent: Fan 1986. 190-191 

betlar. 

38. Sagdullaeva M.Sh., Qirg‘izbaeva X.M., Ramazanova 

S.S., Gulyamova M.G., Fayzieva F.X. Flora gribov 

Uzbekistana. Gifal'nnie gribi. (Dematiaceae) – 

Tashkent: Fan, 1990. T.6. – 132. 

39. Sagdullaeva M.Sh., Ramazanova S.S., Qirg‘izbaeva 

X.M., Gulyamova M.G., Fayzieva F.X. Flora gribov 

Uzbekistana. Gifal'nnie gribi. Moniliaceae – 

Tashkent: Fan, 1989. T.5. – 283 s. 

40. Salieva Ya.S. Mikromiseti sosudistix rasteniy 

Surxandar'inskoy oblasti. Avtoref. diss. … kand. 

biol. nauk. Tashkent, 1989. 21 b. 

41. Vvedenskiy A. Flora Uzbekistana (Flora of 

Uzbekistan) Volume 5. Akad. Nauk UzSSR; 

Tashkent, Uzbekistan: 1961. 396-398 betlar. 

42. Zaprometov N. G. 1926. Materiali po mikoflore 

Sredney Azii. Vip. 1. Tashkent: 1–36. 

43. Zaprometov N. G. 1928. Materiali po mikoflore 

Sredney Azii. Vip. 2. Tashkent: 1–70.  

44. Ульянищев В.И. Определитель ржавчинных 

грибов СССР. – Л. – 1978. 234, 240. 

https://doi.org/10.37547/ajbspi/Volume03Issue03-01
https://scholar.google.co.in/scholar?q=
https://www.mendeley.com/search/?page=1&query=

