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Số người truy cập: 112,298,152
Isolation of indole-3-acetic acid-producing Azospirillum brasilense from Vietnamese wet rice: co-immobilization of isolate and microalgae as a sustainable biorefinery
Tác giả hoặc Nhóm tác giả:
Thi-MyPham, Xuan DongBui, Trang VuKhanh Le; Thi-MaiLe; Minh LyNguyen; Dang-MauTrinh; Thi DongPhuong Nguyen; Kuan ShiongKhoo; Kit WayneChew; Pau LokeShow
Nơi đăng:
Journal of Biotechnology (SCIE-Q2);
S
ố:
349(2022);
Từ->đến trang
: 12-20;
Năm:
2022
Lĩnh vực:
Khoa học công nghệ;
Loại:
Bài báo khoa học;
Thể loại:
Quốc tế
TÓM TẮT
Production of indole-3-acetic acid (IAA) is well documented in various studies for the bacteria that inhabit the rhizosphere of plants, but with roots of wet rice, the outstandings have been not yet elucidated. This study began with the isolation of bacteria type strain
Azospirillum
sp. and developed the investigation to a screening of their ability in IAA production. This screening conducted a selection of only bacteria that was capable of the production of IAA with its content of over 25 µg. mL-1 for sequencing. Of 10 isolates only one resulted from the type strain
Azospirillum brasilense
(
A. brasilense
) with a similarity of 100%. Various factors that influence
A. brasilense
in biosynthesizing IAA such as temperature, pH, nitrogen presence and concentration of tryptophan in the culture medium were examined. The results indicated that the culture conditions were suitable for IAA biosynthesis at pH 6.5, 30°C, culture media with nitrogen, and 0.1% trytophan. The next survey on the role of the immobilization of this bacteria with microalgae in alginate was highlighted to its support in microalgal growth. With the co-immobilization of bacteria and microalgae, the density of
Chlorella vulgaris
was significantly increased during 15-day culture, inducing 2.2 times of cell content in culture batch microalgae immobilized
A. brasilense
higher than that free-bacteria.
ABSTRACT
Production of indole-3-acetic acid (IAA) is well documented in various studies for the bacteria that inhabit the rhizosphere of plants, but with roots of wet rice, the outstandings have been not yet elucidated. This study began with the isolation of bacteria type strain
Azospirillum
sp. and developed the investigation to a screening of their ability in IAA production. This screening conducted a selection of only bacteria that was capable of the production of IAA with its content of over 25 µg. mL-1 for sequencing. Of 10 isolates only one resulted from the type strain
Azospirillum brasilense
(
A. brasilense
) with a similarity of 100%. Various factors that influence
A. brasilense
in biosynthesizing IAA such as temperature, pH, nitrogen presence and concentration of tryptophan in the culture medium were examined. The results indicated that the culture conditions were suitable for IAA biosynthesis at pH 6.5, 30°C, culture media with nitrogen, and 0.1% trytophan. The next survey on the role of the immobilization of this bacteria with microalgae in alginate was highlighted to its support in microalgal growth. With the co-immobilization of bacteria and microalgae, the density of
Chlorella vulgaris
was significantly increased during 15-day culture, inducing 2.2 times of cell content in culture batch microalgae immobilized
A. brasilense
higher than that free-bacteria.
[
j. biotec - n349.pdf
]
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