Department of Biology, Baylor University, 76798, Waco, TX.
Planta. 1985 May;164(1):126-8. doi: 10.1007/BF00391037.
The abscisic-acid (ABA) content of roots of the carotenoid-deficient w-3, vp-5, and vp-7 mutants of Z. mays was analyzed using gas chromatography-mass spectrometry with an analysis sensitivity of 6 ng ABA g(-1) fresh weight (FW). Roots of normal seedlings of the same lines were characterized by the following amounts of ABA (as ng ABA g(-1) FW,±standard deviation): w-3, 279±43; vp-5, 237±26; vp-7, 338±61. We did not detect any ABA in roots of any of the mutants. Thus, the lack of carotenoids in these mutants correlated positively with the apparent absence of ABA. Primary roots of normal and mutant seedlings were positively gravitropic, with no significant differences in the curvatures of roots of normal as compared with mutant seedlings. These results indicate that ABA 1) is synthesized in maize roots via the carotenoid pathway, and 2) is not necesary for positive gravitropism by primary roots of Z. mays.
使用气相色谱-质谱联用分析了类胡萝卜素缺乏型 w-3、vp-5 和 vp-7 突变体玉米根中的脱落酸 (ABA) 含量,分析灵敏度为 6ng ABA g(-1) 鲜重 (FW)。相同系的正常幼苗的根中 ABA 的含量(以 ng ABA g(-1) FW 表示,±标准偏差)如下:w-3,279±43;vp-5,237±26;vp-7,338±61。我们在任何突变体的根中均未检测到任何 ABA。因此,这些突变体中类胡萝卜素的缺乏与 ABA 的明显缺乏呈正相关。正常和突变体幼苗的主根均具有正向向重力性,正常根的弯曲度与突变体根相比没有显著差异。这些结果表明,ABA 1)通过类胡萝卜素途径在玉米根中合成,2)对 Z. mays 主根的正向向重力性不是必需的。