Maataloustieteellinen A ikakauskirja Vol. 59: 131—139, 1987 Quantity and quality of potato yield as influenced by unbalanced and excessive fertilization MARKKU YLI-HALLA, ESKO VIIKARI and JUHA PALONEN Kemira Oy, Espoo Research Centre, Luoteisrinne 2 SF-02270 ESPOO. Finland Abstract. Potato (var. Rekord) was cultivated for three years in a sandy field. It was given various levels of three fertilizers the N, P and K composition of which in percentages was 7-11-12, 18-3-12 and 27.5-0-0. The N levels were 0, 80/60, 140/120 and 300/240 kg/ha (1983/1984-85), but the P and K levels varied according to the composition of the fertilizers. In the first year the yields were high regardless of fertilization. The following years the yields were clearly highest in the plots where the fertilizer 7-11-12 was used. This was due to insufficient P and K supply in the other plots. With increasing N fertilization the starch content and mealiness of the tubers decreased and the flavour was degraded. The two higher N levels yielded a considerably higher nitrate content than was measured in tubers from unfertilized plots and those receiving the lowest levels of fertilizers. The present results point out the significance of appropriate N fertilization for potato. A certain N amount was necessary to produce a quantitativelysatisfactory yield but excessive amounts had an adverse effect on the quality. P and K were of minor im- portance for the quality in this experiment, but abundant P and K fertilization was needed for optimum yield formation. Maintenance ofsoil K level proved difficult in continuous potato cultivation. Index words: mealiness, flavour, starch content, nitrate content, soil fertility Introduction Recently, the unsatisfactory quality of table potato has been a topic frequently discussed in Finland. Investigations of the National Board of Trade and Consumer Interests have revealed that in 1983 about 30 % of the potato bags available in shops did not fulfil the qual- ity requirements set for table potato (Anon. 1984). The degraded quality of potato has often been attributed to changes in potato cultivation during the last two decades: In Finland, a great deal of potato is grown in specialized farms with insufficient field area for proper crop rotation. Fertilization has also been blamed. An opposite point of view is the improper handling and storage. The primary purpose of this three-year ex- periment was to study the response of potato quality to unbalanced and excessive fertiliza- 131 JOURNAL OF AGRICULTURAL SCIENCE IN FINLAND https://www.c-info.fi/en/info/?token=Y8Vx2C7V8yW1y8h6.z92jaVJ9KQt8rqxcJnhqfQ.LswQJWl4I9ybVWno0o0s_rN2VxRsI4uikzyM-KJQBA3pfQ2tzqnUoW-OKJZtrD21kSXtZncxcLY5qfsCF5SPJ2KCHy26gaSZhQpBuy6PyuGE7ydtQ1-hilOe5xgugY9m8oNuSVRJ47E66yMt7YdSJiHl9QsRA1sPx6l_8s1ClHPVuhOCkI8fOyI9ZiarUb8ZZMwAFrPwt22VVTcK9g Table 1. Quantities of N, P and K (kg/ha) applied in various fertilizer treatments. Fertilizer and N p kfertilization level 1983 1984—85 1983 1984—85 1983 1984—85 7-11-12 I 80 60 126 94 137 103 » II 140 120 220 188 240 206 » 111 300 240 471 376 514 410 •8-3-12 I 80 60 13 10 53 40 » II 140 120 23 20 93 80 » 111 300 240 50 40 200 160 27.5-0-0 I 80 60 _ _ » 11 140 120 _ » 111 300 240 _ _ tion. The quality was assessed by measuring parameters expressing the chemical composi- tion of the tubers as well as by grading the mealiness and flavour of cooked potatoes. Yields and changes in the nutrient content of the soil were also evaluated. Materials and methods The experiment was made at Kotkaniemi experimental farm in Vihti, Southern Finland, on three consecutive summers from 1983 to 1985. The field was sandy, 92 % of the soil material being coarser than 0.06 mm in diame- ter and the soil contained 0.9 % organic car- bon. In 1982, spring wheat was grown in the same field. Three levels of three fertilizers, designated in this paper according to their N, P and K contents in percentages, were applied. Fer- tilizer 7-11-12 is specially designed for table potato. It contains K as K,S0 4 . Fertilizer 18-3-12 contains K as KCI and 27.5-0-0 only N. The fertilizer levels corresponded to certain N levels, but the amounts of P and K varied (Table 1). In 1983, the N levels were 80, 140 and 300 kg/ha, in the following years 60, 120 and 240 kg/ha. To provide a reference sample, potato was grown also with no fertilization. In addition, 95 kg Mg as MgS04 was applied in 1983 and 1985. Each spring the field was harrowed lightly, fertilizers were broadcasted and ploughed in and the field was harrowed. The seed tubers of the variety Record, sprouted for two weeks, were planted 28—30 cm apart using an auto- matic two-row machine. Each plot, sized 2.8 m X 10 m, consisted of four rows. The experiment was arranged in four randomized blocks. The same plots were used yearly to find out the cumulative effect of fertilization. The potatoes were harvested with a two-row digger. The dates of planting and harvest as well as the growing time were as follows: planting harvest growing time 1983 May, 19 Sept., 9 118 d. 1984 May, 23 Sept., 6 106 d. 1985 June, 6 Sept., 23 110 d. The yield of the two middle rows of each plot was weighed and the tubers were divided into three size fractions: smaller than 25 mm, 25—55 mm and larger than 55 mm. These fractions were also weighed separately. The potatoes of the middle size fraction were analyzed for starch by weighing in water and in the air at Hämeen Peruna Oy. In 1983, also nitrate nitrogen and ascorbic acid (vitamin C) were determined. Nitrate was extracted with water and ascorbic acid with a mixture of acetonitrile and water (1:1 v/v). The measure- ments were done by liquid chromatography. The cooking quality of the middle size frac- tion was evaluated by grading the tubers for flavour and mealiness. The rating of Lugt and Goodijk (1959, ref. Ellala et al. 1971) as modified by Ellala et al. (1971) was used. 132 Table 2. Total potato yields (t/ha) and percentages of various tuber size fractions.* Fertilizer and fer- Total yield Tubers (%) of various size tilization level t/ha <25 mm 25—55 mm >55 mm Unfertilized 23.6C 12» 80ab 8 C 7-11-12 I 32.0»bc 10»b 72 b 18ab » II 35.8» 7 td 71 b 22» » 111 34.1»b 6d 73 b 22» 18-3-12 I 29.5bcd Bbtd8 btd 75»b 17»b » II 30.9» bcd 6d 77 ab I7»b » 111 33.2» b 6cd 72b 21» 27.5-0-0 I 26.2dc I0b 79»b I2bc » II 27.4 cdc 6d 81“ 13bc » 111 27.6 cdc 9bc 76»b 15abc � Each column has been tested separately. Means marked with a common letter do not differ at P =0.05. This rating, using scores from 1 to 4, was done by the same six trained examiners every year in October—November. Soil samples were taken at the beginning of the experiment from each block and after the trial from each plot. The samples were analyzed for P, K and Ca according to Vuorinen and Mäkitie (1955). The results for mealiness and flavour were tested statistically with Wilson’s non-para- metric analysis of variance (Wilson 1956) and other results with the common analysis of variance and with Student-Neuman-Keuls’ test as well as with correlation analysis (Steel and Torrie 1980). Results Yields The tuber yields are presented in Table 2. Compared with the unfertilized yields, in- creases of 36 %, 25 % and 11 % were ob- tained by the lowest levels of the fertilizers 7-11-12, 18-3-12 and 27.5-0-0, respectively. There was a slight but statistically insignifi- cant tendency of the yields to increase as the dose of a certain fertilizer was elevated to the second level and, in case of the fertilizer 18-3-12, further to the highest one. The yield of the size fraction 25—55 mm correlated closely (r = o.92***) with the total yield and averaged 76 % of it. The percentage of small tubers was highest in the unfertilized plots (Table 2). The percentage of the large tubers (> 55 mm) increased slightly with in- creasing fertilizer level. The yields decreased sharply from year to year, the overall averages of the experiment in various years being as follows: 1983 40.6 t/ha 1984 30.6 » 1985 18.4 » Besides unbalanced fertilization, the decrease may partly be due to the weather which in 1983 was very favourable for potato with an even distribution of precipitation and a rather high temperature. The two latter years were colder with excessive rains in July or August. In addition, in 1985 the low yields can also be attributed to seed tubers infected by Erwinia carotovora. In 1983, there were only small differences between the yields of the various fertiliza- tion treatments (Fig. 1). Even the unfertilized plots yielded as much as 28.1 t/ha. In the fol- lowing years the differences widened, and in 1984 and 1985 the fertilizer 7-11-12 produced considerably higher yields than did the other ones. Chemical composition of the yield The content of starch ranged from 11.1 % to 17.9 %, mean 15.2 %. The unfertilized 133 potatoes exhibited the highest starch content, mean 16.5 %. The fertilizer 27.5-0-0 produced tubers higher in starch content (15.9 °7o ) than did the two NPK fertilizers (14.7 %). The starch content decreased with increasing fer- tilization and correlated closely with starch yields (r = o.9B***) (Table 3). Fertilization had a major influence on the NOj-N content of the tubers. Despite the great variation between the blocks there was a clear tendency of N03-N content to grow three-to-sixfold as the fertilization was in- creased from N 80 kg/ha to N 300 kg/ha. The nitrate content was, however, equal in tubers fertilized with 80 kg N/ha and those not fer- tilized at all. The vitamin C content was high- est in the unfertilized tubers and lowest in those given the highest levels of NPK fertili- zers. Mealiness and flavour The average scores given to cooked potatoes (Table 4) were the lower the larger quantities of fertilizers had been applied. The fertiliza- tion rate had a statistically significant effect (***) on the mealiness and flavour, but the Fig. I. Potato yields obtained from plots fertilized with various doses of three fertilizers in three years 134 Table 3. Content of starch (°fo) (1983—1985), nitrate nitrogen (mg/kg) (1983) and vitamin C (mg/ 100 g) (1983) in fresh potato.* Fertilizer and fer- Starch NOrN Vitamin C tilization level % mg/kg mg/100 g Unfertilized 16.5“» 23»' 14.0s 7-11-12 I 16.0s1* 15' 9.4“» » II 14.7d 68“»' 11.3sb » 111 13.5' 100“ 7.4 b 18-3-12 I 15.5abcd 28“»' 11.0“» » II 15.1"1 43“»' 10.5“» » 111 13.5' 95“» 7.7» 27.5-0-0 I 16.7“ 28“»' 12.0“» » II 15.5“»'d 28“»' 11.6“» » 111 15.5“»'d 70“»' 11.5“» * Each column has been tested separately. variation between the years was not signifi- cant. The scores given to these two properties correlated with each other (r =o.62***). The scores given to unfertilized potatoes and to potatoes receiving the lowest level exceeded usually 2.5, which is the minimum requirement for table potato according to Ellala et al. (1971). The plots receiving higher levels of fer- tilizers produced tubers of inferior mealiness and flavour with only few exceptions. The scores given by various examiners were studied with correlation analysis (Table 5). The correlation coefficients between the scores for mealiness were considerably higher than those for flavour. The scores given by the examiner number five were systematically lower than those given by the others. Soil analyses The various fertilizer treatments had caused considerable changes in soil fertility parameters (Table 6). The soil pH had decreased slightly, the more the higher levels of fertilizers had been applied. The amount of exchangeable Ca had decreased consequently. The amount of exchangeable K had decreased in all plots ex- cept in those receiving the highest level of the fertilizers 7-11-12 and 18-3-12. Soil P was the higher the more P fertilization had been given. Despite the excessive fertilizer levels given to certain plots, the electrical conductivity reflecting the salt content of the soil solution was practically equally low in all plots. This shows that ions not taken up by the crop and not sorbed by the soil (mainly nitrate, sulphate and chloride) had leached from the soil. The leaching had probably occurred mainly with soil Ca the amount of which had decreased most in the plots receiving the highest amounts of fertilizers. Discussion A potato crop of 30 t/ha contains N 120— 140 kg/ha, P 15—20 kg/ha and K 190— 240 kg/ha (Varis 1973 a). Despite the rather Table 4. Scores given to mealiness and flavour by the examiner group. Year Scores given to treatments Unferti- 7-11-12 18-3-12 27.5-0-0 I II 111 I II 111 I II 111 Flavour 1983 2.9 2.7 2.4 2.2 2.5 2.3 2.1 2.6 2.3 2.4 1984 2.8 2.8 2.4 1.9 2.5 2.5 2.1 2.7 2.3 2.5 1985 2.8 2.4 2.4 2.2 2.6 2.2 2.1 2.8 2.2 2.4 Mean 2.8 2.7 2.4 2.1 2.6 2.3 2.1 2.7 2.2 2.4 Mealiness 1983 3.1 2.6 2.3 2.1 2.7 2.2 2.1 2.8 2.6 2.4 1984 3.0 2.8 2.2 1.9 2.6 2.3 2.1 2.8 2.4 2.3 1985 2.8 2.4 2.3 2.3 2.5 2.2 2.1 2.8 2.2 2.3 Mean 3.0 2.6 2.3 2.1 2.6 2.2 2.1 2.7 2.4 2.4 135 Table 5. Linear correlation coefficients between scores given by various examiners to flavour and mealiness of cooked potatoes as well as overall means of scores. Exami- Mean Examiner "er 2 3 4 5 6 Flavour 1 2.7 0.26»* 0.25** 0.28** o.4o*** o.46*** 2 2.6 1.00 0.16"» o.37*** 0.28** o.33*** 3 2.4 1.00 0.25** 0.30** 0.40»** 4 2.4 1.00 0.37*»* 0.25** 5 2.2 1.00 o.s3*** 6 2.4 1.00 Mealiness 1 2.6 o.4B*** o.43*** o.ss*** 0.55*»* o.6s*** 2 2.6 1.00 0.28** o.4B*** o.42*** o.63*** 3 2.5 1.00 o.sl*** o.47*** 0.61*»* 4 2.3 1.00 o.4s*** o.sB*** 5 2.2 1.00 o.67*** 6 2.4 1.00 Table 6. Soil properties of potato field before and after the experiment.* Fertilizer and fer- pH El.cond. Ca K P tilization level 10~*Scm-' mg/1 mg/1 mg/1 After the trial: Unfertilized 6.2“ 0.8b 1020“ 96b » 7.5- 7-11-12 1 6. l“b 0.8 b 962“ b 88b » 10.6b » » II 5.9b » 0.9b 832“b 108b » 12.3b » 111 5.8» 1.5a 812 h 185“ 18.0“ 18-3-12 I 6.2“ 0.8b 995“b 81b » 8.0b » » II 6.1“b 0.8 b 900“ b 100b » 8.0,K » 111 5.9» l.l b 850“ b 125b 10.3b » 27.5-0-0 I 6.2“b 0.7b 975“b 71» 6.9» » II 6.l“b 0.8 b 985 ab 82 b» 6.9» » 111 6.0'b 0.7 b 850“ b 80b » 6.8» Before the trial: 6.2 n.d. 1075 120 9.7 • Each column, omitting the values before the trial, was tested separately, n.d. = not determined low P uptake, the potato crop usually responds to high P doses up to 130 kg/ha. The P and K requirement of potato was in this experi- ment satisfied only with the fertilizer 7-11-12, particularly designed for table potato. Despite a very unbalanced fertilization in certain plots, rather high yields were obtained in 1983 from all plots with only small differences between the fertilizer treatments, because the crop utilized the soil reserves of P and K. In the following years, the nutrient reserves of soil, especially those of K, were exhausted in the coarse soil. In the plots receiving the fertilizers 18-3-12 and 27.5-0-0 it was the supply of P and K which in the latter years had obviously limited the yield formation. Even the lowest level of the fertilizer 7-11-12 in which 103 or 137 kg K/ha was applied could not prevent the depletion of soil K reserves. Only the highest level of that fertilizer elevated the amount of exchangeable K in the soil. On the contrary, the level of easily soluble P was 136 much more easily maintained. N fertilization of 100 kg/ha and 110 kg/ha have produced the highest yields in the factorial experiments of Varis (1973 a) and Tähtinen (1977), re- spectively. In the present trial, the maximum yield obtained with the fertilizer 7-11-12 was reached at the second fertilization level with the N level of 140/120kg/ha. This result may partly be due to the simultaneous increment of K the quantity of which may not have been sufficient at the lowest level of the fertilizer 7-11-12. Yet, the yield increase attributable to the increment of the fertilization from the first to the second level was small. The experi- mental design used did not allow detailed evaluation of the influenceof single nutrients. The evaluation of mealiness and flavour of cooked potatoes is dependent on the personal appreciations of the examiners, and the stan- dardization of the scale is therefore difficult. In the present experiment, the examiners were obviously more in agreement about the meal- iness than they were about the flavour. Fur- ther, mealiness is closely correlated with starch content (Varis 1970 a), but flavour is not so clearly connected with easily detectable chemical characteristics. This may make meal- iness a more reliable measure for the quality of table potato than is flavour. The scores of mealiness and flavour were the lower the more N had been applied to the plots and not at all dependent on the doses of P and K given. Although comparison of the absolute scores given by different examiner groups is somewhat questionable, the in- vestigation of the trends found in other studies is well justified. The lowering of scores of flavour and mealiness due to increased N fertilization has earlier been reported by e.g. Varis (1970 a and b, 1973 b). Also Ellala et al. (1971) noticed that the flavour and mealiness of potato were decreased as an NPK dose twice the recommended one was applied. On the contrary, the remarkable observa- tion that the scores given were not dependent on the doses of P and K apparently disagrees with numerous papers. Hahlin and Johans- son (1973) reported that P fertilization im- proved the flavour. Varis (1973 b) made a similar observation about P fertilization and mealiness. In addition, the disadvantageous effects of Cl on the quality, applied as KCI in the fertilizer 18-3-12, were not displayed. Compared with K2S0 4, KCI should decrease mealiness (Varis 1970 b, Black and White 1973) and flavour (Hahlin and Johansson 1973). On the other hand, the blackening of cooked potatoes which is a major disadvantage of Cl was not determined in the present study. The above anomalies in the response of mealiness and flavour to fertilization can part- ly be explained by the differences in starch content of the tubers. Excessive N fertiliza- tion was associated with low starch content which is an indication of delayed matura- tion, a phenomenon frequently presented in the literature (e.g. Varis 1973 a). Now, for some reason, the starch content and thus the scores given were constant on a certain N level regardless of the fertilizer used. The favourable effect of P and the adverse effect of K (Varis 1973 a) on the starch content could not be distinguished at the lowest level of fertiliza- tion, probably due to the small amounts of P and K, not exceeding the physiological requirement of the crop. Also the quantity of chlorine was small in the lowest dose of the fertilizer 18-3-12. When the fertilization was increased the disadvantageous effect of excessive N seemed to overrule and it may have masked the other influences. Besides the lowering of starch content, too high N doses also strongly elevated nitrate concentrations in the tubers. This shows that potato could not process nitrate nitrogen into ammonium as effectively as N had been taken up at the higher N levels. A high nitrate con- tent may also reflect the unmaturation of tubers. The nitrate contents of the potato fertilized with the lowest fertilizer doses were in agreement with the study of Mäkäräinen (1984) which was based on 303 potato samples. Further, Carter and Bosma (1974) showed that the nitrate content of the tubers increased steadily with increasing N fertilization. The highest concentration reported by them was 137 130 mg/kg which is near the maximum of this study. The present results point out the importance of appropriate N fertilization for table potato. A certain N dose is needed to produce an economically satisfactory yield, but the quality of potato seems to be detrimentally influenced by excessive amounts. The quality was ob- viously not equally sensitive to the unbalances in P and K nutrition, which supports the ob- servations made by Varis (1973 b). Abun- dant P and K fertilization was, however, ex- tremely important in maintaining the soil fer- tility and thus the quantity of the yield. Acknowledgement. The authors wish to thank Mr. Börje Björkqvist, M.Sc., for determination of nitrate and vitamin C and Mrs. Eija Saarikko, B.Sc., for practical assistance. References Anon. 1984. Ruokaperunan laadunvalvonta syksyllä 1983. Elinkeinohallitus. Kuluttaja-asiainosaston julk. A 5/84. 16 p. [Quality control of table potato in autumn 1983. Nat. Board Trade Consumer Interests, Pubi. Dept. Consumer Aff. A 5/84.) Black, W.N. & White, R.P, 1973. Effects of nitrogen, phosphorus, potassium and manure factorially applied to potatoes in a long-term study. Can. J. Soil Sci. 53; 205—211. Carter, J.N. & Bosma, S.M. 1974. Effect of fertilizer and irrigation on NOj-N and tot. N in potato tubers. Agron. J. 66: 263—266. Ellai.a, A., Vanhanen, L. & Kurkela, R. 1971. Typpi- ja kalilannoituksen vaikutus ruokaperunan laatuun. Abstract: The influence of nitrogen and potassium fertilizing on the specific gravity and cooking quality of potato varieties Bintje and Realta. J. Scient. Agric. Soc. Finl. 43: 67—72. Hahlin, M. & Johansson, O. 1973. Fosfor- och kalium- gödsling till matpotatis. Summary: Phosphorus and potassium fertilization to food potatoes. Lantbruks- högsk. medd. A 192. 47 p. Uppsala. Mäkäräinen, E. 1984. Suomalaisen ruokaperunan nit- raattipitoisuus. Elinkeinohallitus. Kuluttaja-asiainosas- ton julk. A 6/84. 87 p. [Nitrate content of Finnish table potato. Nat Board Trade Consumer Interests, Pubi. Dept. Consumer Aff. A 6/84.] Steel, R.G.D. & Torrie, J.H. 1980. Principles and procedures of statistics. 634 p. 2nd Ed. Tokyo. Tähtinen, H. 1977. Perunan typpi-ja kaliumlannoitus. Maatalouden tutkimuskeskus. Maanviljelyskemian ja -fysiikan laitos. Tiedote n:o 5. 21 p. [Nitrogen and potassium fertilization of potato. Agric. Res. Centre, Dept. Agric. Chem. Phys. Information sheet no. 5). Varis, E. 1970 a. Starch content as a criterion of the cooking quality of potato lots grown under various con- ditions. Acta Agric. Fenn. 118: 2: 1—26. —, 1970 b. Variation in the quality of table potato and the factors influencing it in Finland. Acta Agric. Fenn. 118: 3: 1—79. —, 1973 a. The effects of increasing NPK rates of the yield and quality of Pilo-potato. 1. Tuber yield, starch content and starch yield. Acta Agric. Fenn. 128: 1: I—2o. —, 1973 b. 11. External and internal quality. Acta Agric. Fenn. 128: 2: 1—23. Vuorinen, J. & Makitie, O. 1955. The method of soil testing in use in Finland. Agrogeol. Pubi. 63: 1—44. Wilson, K.V. 1956. A distribution-free test of analyses of variance hypotheses. Physiol. Bull. 53: 96—101. Ms received June 16, 1987. SELOSTUS Epätasapainoisen ja liiallisen lannoituksen vaikutus perunasadon määrään ja laatuun Markku Yli-Halla, Esko Viikari ja Juha Palonen Kemira Oy, Espoon tutkimuskeskus 02271 Espoo Rekord-perunaa viljeltiin karkealla hietamaalla kolmen vuoden ajan ja sitä lannoitettiin Kloorivapaalla Y-lan- noksella (lyh. Ykv) (N 7 %, P 11 %, K 12 %), Oulun typpirikkaalla Y-lannoksella (lyh. OTR) (N 18 %, P 3 %, 138 K 12 %) ja Oulunsalpietarilla (lyh. OS) (N 27.5 %). N-lannoitustasot olivat 0, 80/60, 140/120tai 300/240 kg/ ha (1983/1984-85), mutta P- ja K-määrät vaihtelival lan- noitteen koostumuksen mukaan. Ensimmäisenä vuonna satoerot olivat pieniä mutta maan P- jaK-varojen ehtyessä toisena ja kolmantena vuonna OTR:n ja OS:n avulla luo- tetut sadot jäivät määrällisesti paljon alle Ykv:lla saatu- jen satojen. N-lannoituksen kohotessa sadon tärkkelys- pitoisuus pieneni, jauhoisuus aleni ja maku huononi. Kah- della korkeimmalla N-lannoitustasolla perunoiden nitraat- tipitoisuus oli korkeampi kuin lannoittamattomien tai pie- nimmällä N-lannoituksella tuotettujen perunoiden. P- ja K-lannoitus vaikuttivat tässä kokeessa ratkaisevasti sa- don määrään mutta poikkeuksellisesti eivät sen laatuun. Maan K-tilan ylläpito kolme vuotta jatkuneessa yhtämit- taisessa perunanviljelyssä osoittautui vaikeaksi. 139